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Quantitative infere...
Quantitative inference of the H2 column densities from 3mm molecular emission: case study towards Orion B
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- Gratier, Pierre (författare)
- Université de Bordeaux,University of Bordeaux
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- Pety, Jerome (författare)
- Institut de Radioastronomie Millimétrique (IRAM),PSL University Paris
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- Bron, Emeric (författare)
- PSL University Paris
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- Roueff, Antoine (författare)
- Aix-Marseille Université,Aix Marseille University
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- Orkisz, Jan, 1991 (författare)
- Chalmers tekniska högskola,Chalmers University of Technology
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- Gerin, Maryvonne (författare)
- PSL University Paris
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- Magalhaes, Victor de Souza (författare)
- Institut de Radioastronomie Millimétrique (IRAM)
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- Gaudel, Mathilde (författare)
- PSL University Paris
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- Vono, Maxime (författare)
- Université de Toulouse,University of Toulouse
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- Bardeau, Sebastien (författare)
- Institut de Radioastronomie Millimétrique (IRAM)
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- Chanussot, Jocelyn (författare)
- Université Grenoble Alpes,Grenoble Alpes University
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- Chainais, Pierre (författare)
- Université de Lille,University of Lille
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- Goicoechea, Javier R. (författare)
- CSIC - Instituto de Fisica Fundamental (IFF)
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- Guzman, Viviana V. (författare)
- Pontificia Universidad Catolica de Chile
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- Hughes, Annie (författare)
- Universite Paul Sabatier Toulouse III,Paul Sabatier University
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- Kainulainen, Jouni, 1979 (författare)
- Chalmers tekniska högskola,Chalmers University of Technology
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- Languignon, David (författare)
- PSL University Paris
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- Le Bourlot, Jacques (författare)
- PSL University Paris
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- Le Petit, Franck (författare)
- PSL University Paris
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- Levrier, Francois (författare)
- PSL University Paris
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- Liszt, Harvey (författare)
- National Radio Astronomy Observatory
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- Peretto, Nicolas (författare)
- Cardiff University
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- Rouefe, Evelyne (författare)
- PSL University Paris
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- Sievers, Albrecht (författare)
- Institut de Radioastronomie Millimétrique (IRAM)
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(creator_code:org_t)
- 2020-12-23
- 2021
- Engelska.
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Ingår i: Astronomy and Astrophysics. - : EDP Sciences. - 0004-6361 .- 1432-0746. ; 645
- Relaterad länk:
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https://research.cha... (primary) (free)
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https://www.aanda.or...
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https://research.cha...
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https://doi.org/10.1...
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Abstract
Ämnesord
Stäng
- Context. Based on the finding that molecular hydrogen is unobservable in cold molecular clouds, the column density measurements of molecular gas currently rely either on dust emission observation in the far-infrared, which requires space telescopes, or on star counting, which is limited in angular resolution by the stellar density. The (sub)millimeter observations of numerous trace molecules can be effective using ground-based telescopes, but the relationship between the emission of one molecular line and the H-2 column density is non-linear and sensitive to excitation conditions, optical depths, and abundance variations due to the underlying physico- chemistry.Aims. We aim to use multi-molecule line emission to infer the H-2 molecular column density from radio observations.Methods. We propose a data-driven approach to determine the H-2 gas column densities from radio molecular line observations. We use supervised machine-learning methods (random forest) on wide-field hyperspectral IRAM-30m observations of the Orion B molecular cloud to train a predictor of the H-2 column density, using a limited set of molecular lines between 72 and 116 GHz as input, and the Herschel-based dust-derived column densities as "ground truth" output.Results. For conditions similar to those of the Orion B molecular cloud, we obtained predictions of the H-2 column density within a typical factor of 1.2 from the Herschel-based column density estimates. A global analysis of the contributions of the different lines to the predictions show that the most important lines are (CO)-C-13(1-0), (CO)-C-12(1-0), (CO)-O-18(1-0), and HCO+(1-0). A detailed analysis distinguishing between diffuse, translucent, filamentary, and dense core conditions show that the importance of these four lines depends on the regime, and that it is recommended that the N2H+(1-0) and CH3OH(2(0)-1(0)) lines be added for the prediction of the H-2 column density in dense core conditions.Conclusions. This article opens a promising avenue for advancing direct inferencing of important physical parameters from the molecular line emission in the millimeter domain. The next step will be to attempt to infer several parameters simultaneously (e.g., the column density and far-UV illumination field) to further test the method.
Ämnesord
- NATURVETENSKAP -- Fysik -- Astronomi, astrofysik och kosmologi (hsv//swe)
- NATURAL SCIENCES -- Physical Sciences -- Astronomy, Astrophysics and Cosmology (hsv//eng)
- NATURVETENSKAP -- Fysik -- Atom- och molekylfysik och optik (hsv//swe)
- NATURAL SCIENCES -- Physical Sciences -- Atom and Molecular Physics and Optics (hsv//eng)
- NATURVETENSKAP -- Kemi -- Teoretisk kemi (hsv//swe)
- NATURAL SCIENCES -- Chemical Sciences -- Theoretical Chemistry (hsv//eng)
Nyckelord
- methods: statistical
- ISM: clouds
- ISM: molecules
Publikations- och innehållstyp
- art (ämneskategori)
- ref (ämneskategori)
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Gratier, Pierre
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Pety, Jerome
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Bron, Emeric
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Roueff, Antoine
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Orkisz, Jan, 199 ...
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Gerin, Maryvonne
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Magalhaes, Victo ...
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Gaudel, Mathilde
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Vono, Maxime
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Bardeau, Sebasti ...
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Chanussot, Jocel ...
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Chainais, Pierre
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Goicoechea, Javi ...
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Guzman, Viviana ...
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Hughes, Annie
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Kainulainen, Jou ...
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Languignon, Davi ...
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Le Bourlot, Jacq ...
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Le Petit, Franck
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Levrier, Francoi ...
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Liszt, Harvey
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Peretto, Nicolas
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Rouefe, Evelyne
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Sievers, Albrech ...
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